EP0601810B1 - Commutateur sensible à haute pression et méthode pour sa fabrication - Google Patents

Commutateur sensible à haute pression et méthode pour sa fabrication Download PDF

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Publication number
EP0601810B1
EP0601810B1 EP93309729A EP93309729A EP0601810B1 EP 0601810 B1 EP0601810 B1 EP 0601810B1 EP 93309729 A EP93309729 A EP 93309729A EP 93309729 A EP93309729 A EP 93309729A EP 0601810 B1 EP0601810 B1 EP 0601810B1
Authority
EP
European Patent Office
Prior art keywords
disc
pressure responsive
recess
piston
switch
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP93309729A
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German (de)
English (en)
Other versions
EP0601810A1 (fr
Inventor
Stanley G. Homol
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Texas Instruments Inc
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Texas Instruments Inc
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Filing date
Publication date
Application filed by Texas Instruments Inc filed Critical Texas Instruments Inc
Publication of EP0601810A1 publication Critical patent/EP0601810A1/fr
Application granted granted Critical
Publication of EP0601810B1 publication Critical patent/EP0601810B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H35/00Switches operated by change of a physical condition
    • H01H35/24Switches operated by change of fluid pressure, by fluid pressure waves, or by change of fluid flow
    • H01H35/38Switches operated by change of fluid pressure, by fluid pressure waves, or by change of fluid flow actuated by piston and cylinder
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H35/00Switches operated by change of a physical condition
    • H01H35/24Switches operated by change of fluid pressure, by fluid pressure waves, or by change of fluid flow
    • H01H35/34Switches operated by change of fluid pressure, by fluid pressure waves, or by change of fluid flow actuated by diaphragm
    • H01H35/346Switches operated by change of fluid pressure, by fluid pressure waves, or by change of fluid flow actuated by diaphragm in which the movable contact is formed or directly supported by the diaphragm

Definitions

  • This invention relates generally to pressure responsive electrical switches and more particularly to such switches intended for use with a relatively high fluid pressure source such as those employed in automotive power steering systems.
  • a prior art switch used for this purpose is mounted in a power steering fluid pump and includes a piston slidable disposed in a port which extends from the high pressure side of the pump.
  • a stationary electrical contact is disposed in alignment with the piston in a switch chamber and a second electrical contact is mounted on the end of the piston adjacent the stationary electrical contact.
  • the piston is normally biased away from the second electrical contact and is adapted to move into engagement with the stationary contact when the pressure of the fluid increases to a certain level.
  • the fluid not only communicates with the piston but it also is received in the switch chamber so that the contacts move into and out of engagement submersed in the fluid.
  • a pressure responsive electrical switch for use with a fluid pressure source comprising: a body portion having a top and a bottom surface and having a recess with an end wall formed in the bottom surface, a switch assembly comprising, a stationary contact portion, an electrically conductive disc member overlying the stationary contact portion and being movable into and out of engagement with the stationary contact portion, the switch assembly received in and closing the recess, the body having a bore extending from the top surface to the recess, an elongated piston member slidably received in the bore, the piston member having first and second ends, the first end of the piston member disposed adjacent the switch assembly, the second end of the piston member adapted to be placed in communication with a fluid pressure source and means to form a current path from a terminal through the disc.
  • an object of the invention to provide a pressure responsive electrical switch useful with power steering fluids free of the above noted prior art imitations.
  • Yet another object of the invention is the provision of a pressure responsive switch having a long life, on the order of a million cycles or more, with minimal change in its effective calibration.
  • Another object of the invention is the provision of a pressure responsive switch which can be mounted in various orientations, one which is relatively inexpensive yet rugged and reliable.
  • a piston slidably received in a port formed in the power steering fluid pump extends into a switch body and has an end disposed adjacent to a switch assembly comprising a current carrying disc movable between opposed dished configurations.
  • the disc is preferably snap acting and is selected to move from one dished configuration to an opposite dished configuration when subjected to a preselected actuation force.
  • the disc is mounted on an annular disc seat and a stationary electrical contact is placed in alignment with the center of the disc and located at a selected location within the movement of the disc with the disc providing a selected level of contact force.
  • a diaphragm disposed between the piston and the disc is formed with a central portion displaced from the plane in which the remainder of the diaphragm lies in order to facilitate axial movement of the piston and transfer of force to the disc and minimize calibration shift with changes in temperature.
  • a retainer seat is formed in the switch body adjacent to the diaphragm and in communication with a bore through which the piston extends. A retainer ring is placed on the piston adjacent an end thereof at a location which results in a force being placed on the piston by the diaphragm.
  • This force in conjunction with the retainer ring which is received on the retainer seat, maintains the piston in a vertical but floating orientation relative to the retainer seat so that the piston is guided solely by the port of the pump in which its other end is received.
  • the disc is chosen having a selected actuation force and release force characteristics. The actuation force may then be calibrated by the preload of the piston.
  • the switch chamber is sealed using flexible O-rings between the diaphragm and switch body as well as between the disc seat member and the stationary contact mounting member.
  • the switch assembly including the stationary contact mounted on a terminal disposed in an electrically insulative eyelet member, the disc seat member, disc and diaphragm are telescopically received in a cylindrical opening formed in the body which is then crimped over to lock the switch assembly to the body with the current path extending from the terminal through the disc when in the actuated position through the disc seat member and through the body to the pump housing.
  • the specific location of the stationary contact relative to the plane in which the disc seat lies is adjusted by deforming the top surface of the contact to a desired location providing a selected release force for shapping of the disc back to its at rest configuration.
  • hydraulic pressure switch 10 comprises a generally cylindrical body 12 preferably having a male thread thereon formed of suitable electrically conductive material such as brass having an outer diameter suitable for reception in a mating threaded switch seat 14 formed in the housing 16 of a power steering fluid pump (not shown).
  • a port 18 is formed in housing 16 communicating with the high pressure side of the pump and a vent passage 20 extends from seat 14 to the suction side of the pump.
  • a hexagonal section 22 is formed on body 20 to facilitate installation of the switch in seat 14.
  • a bore 24 extends from a top surface portion 28 to a recess 30 formed in the bottom portion of body 12.
  • a wall portion 32 extends downwardly from recess 30 and is adapted to be crimped over to lock a switch assembly placed in the recess to be described below.
  • Switch assembly 34 comprises a centrally disposed elongated terminal 35 of brass or other suitable electrically conductive material formed with a stationary electrical contact 36 on the inner distal end thereof.
  • Terminal 35 is mounted in an eyelet 38 formed of suitable electrically insulative material, preferably a moldable material, such as a conventional phenolic.
  • Eyelet 38 is received on a disc seat member 40, a generally annular member having a disc seat 42 formed in the top portion thereof, and an O-ring seat 44 in the bottom portion thereof adjacent a downwardly extending wall portion 46.
  • An O-ring 48 composed of suitable flexible material is disposed in O-ring seat 44 and the parts are joined together to form a unitary body.
  • Terminal 35 may be formed with a knurl portion at 39 to improve the bond between the terminal and the electrically insulative eyelet 38.
  • a second O-ring seat 50 is formed in base 12 in communication with recess 30 which receives O-ring 52 similar to O-ring 48.
  • Recess 30 is formed with an end surface 54 inbound of O-ring seat 50 which is preferably tapered slightly to provide a larger central opening, or switching chamber, to facilitate the motion of a switch member 56 to be discussed below.
  • Switch member 56 is an electrically conductive disc member received on seat 42 and is adapted to move, preferably with snap action, between oppositely dished configurations in and out of engagement with stationary contact 36. When disc member 56 is in engagement with contact 36 (not shown), an electrical path exists from terminal 35 through contact 36, disc member 56, disc seat member 40, body 12 and pump housing 16 which is grounded.
  • disc member 56 When disc member 56 moves to its opposite dished configuration as shown in Fig. 1 the electrical path is opened.
  • disc member 56 can be coated with gold on its lower surface to provide an optimum low resistance path between the disc seat member and the stationary contact.
  • the disc is chosen so that it will move from an at rest, first dished configuration to an opposite dished configuration when subjected to a selected actuation force and will return to its original, at rest dished configuration when the force level decreases to a selected, lower force level, as shown in the Force vs. Deflection curve of Fig. 3.
  • a flexible diaphragm 60 is disposed between switch assembly 34 and end wall 54 of recess 30.
  • Flexible diaphragm 60 composed of Kapton or similar suitable material is preferably formed with a central portion 62 permanently deformed, or preformed, a distance of up to approximately 0.02 inches out of the plane in which the remainder of the diaphragm lies.
  • the central portion 62 preferably extends upwardly as seen in Fig. 1 and may extend over an area comparable to the size of piston 64 to be discussed below, which allows unfettered movement of the central portion 62 even though diaphragm 60 is held tautly between recess surface 54 and switch assembly 34 while still effectively serving to seal the switch chamber from the power steering fluid.
  • a recessed retainer shelf 66 is formed in bottom wall 54 and is in communication with bore 24.
  • a retainer ring 68 composed of brass, or other suitable material, is placed on piston 64 formed of suitable material such as stainless steel, adjacent its lower end 70 with an interference fit for a purpose to be described infra.
  • Piston 64 is closely and slidably received in port 18, with top end 72 in communication with high pressure fluid in the pump when switch body 12 is placed in seat 14.
  • An O-ring 74 provides a seal for the switch. Fluid which flows between port 18 and piston 64 is allowed to return to the sump via vent 20.
  • piston 64 and port 18 Clearance between piston 64 and port 18 is on the order of 0,0203-0,0508 mm (0.0008 - 0.002 inches) whereas bore 24 is formed so that there is on the order of 0,381-0,508 mm (0.015 - 0.020 inches) clearance.
  • Port 18 serves to guide the pin with bore 24 being large enough that piston 64 can float within the bore.
  • the retainer ring 68 is located on the piston such that it is in intimate contact with and preferably is preload against the disc. This adjustment helps to maintain the piston in a vertical orientation relative to shelf 66.
  • retainer ring 68 is placed on piston 64 so that end 70 projects beyond end wall 54 a distance greater than desired.
  • the piston is then pushed back toward the top of body 12 so that retainer ring is forced to move toward end 70 until a selected distance exists between end 70 and a plane in which disc seat 42 lies when switch assembly 34 is inserted in recess 30. Provision of the preload also helps to reduce variability in the calibration set points of the switch.
  • disc seat member 56 is placed on the disc seat and diaphragm 60 is placed on top of the disc member.
  • the switch assembly is then pushed into the recess 30 and downwardly depending wall 32 is bent over from the dashed line position shown in Fig. 1 to the solid line position to provide a compressive force on O-rings 48, 52 and diaphragm 60 as well as to ensure an effective electrical connection between disc seat member 40 and body 12.
  • disc seat member 30, clamped by the crimp of wall 32 is designed in such a way as to contain system pressure under unusual high pressure or high temperature conditions thereby minimizing the force applied to eyelet 38 througn terminal 35.
  • Calibration of the switch is effected by choosing a snap acting disc having a desired actuation force level in combination with the specific preload employed on piston 64.
  • the preload correlates to the specific distance that end 70 extends beyond the point at which it just touches the center of or uppermost portion of the disc (through the diaphragm 60) without placing any load on the disc.
  • the preload will decrease the amount of force required to actuate the disc and, since it does not affect the release force of the disc, reduces the hysteresis or differential between contact engagement force level and contact disengagement (release) force level.
  • the release or contact disengagement force level can be adjusted by the vertical placement of stationary contact 36 within the region a-b noted in Fig.
  • a disc used in the switch assembly has a deflection on the order of 0,178 mm (0.007 inches) between points a and b of the Fig. 3 curve.
  • An actuation force is on the order of six pounds with a differential between actuation and release forces on the order of a half to one pound.
  • the preload typically is on the order correlating to 0,025-0,075 mm (0.001 - 0.003 inches) which is on the order of a pound or less.
  • the switch of the invention senses high side system pressure, e.g., on the order of 103,4 bar (1500 psi), and allows high pressure fluid to throttle pass the piston to the low pressure side thereby allowing the use of a low pressure diaphragm to prevent the fluid from entering the contact area of the switch.
  • high side system pressure e.g., on the order of 103,4 bar (1500 psi)
  • a switch made in accordance with the invention could be normally closed as well by providing conventional motion transfer members and could have multiple throw constructions as well as the single throw shown.

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  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Switches Operated By Changes In Physical Conditions (AREA)

Claims (7)

  1. Commutateur électrique sensible à la pression destiné à être utilisé avec une source de pression de fluide élevée comprenant:
       une partie corps (12) ayant une surface supérieure (28) et une surface inférieure et comportant un évidement (30) ayant une paroi d'extrémité (32) formée dans la surface inférieure, un ensemble commutateur comprenant un élément de siège en forme de disque (40), une partie contact fixe (36) isolée électriquement de l'élément siège en forme de disque (40), un élément disque électriquement conducteur (56) disposé sur l'élément siège en forme de disque (40) recouvrant une partie contact fixe (36) et pouvant entrer en contact et sortir du contact avec la partie contact fixe (36), un diaphragme souple (60) reçu sur le disque (56) et sur l'élément de siège en forme de disque (40), l'ensemble commutateur étant logé dans l'évidement (30) et fermant celui-ci, le corps (12) comportant un alésage (24) s'étendant depuis la surface supérieure (28) jusqu'à l'évidement (30), un élément piston allongé (64) logé de manière à pouvoir coulisser dans l'alésage (24), l'élément piston (64) comportant une première et une seconde extrémités (70, 72), l'élément piston (64) ayant une périphérie extérieure plus petite que celle de l'alésage (24) de telle façon qu'il peut être écarté de celui-ci, la première extrémité (70) de l'élément piston (64) étant disposée au voisinage de l'ensemble commutateur, la seconde extrémité (72) de l'élément piston (64) étant conçue pour être mise en communication avec une source de fluide sous pression et des moyens pour constituer un circuit électrique depuis une borne (35), traversant le disque (56) et l'élément de siège en forme de disque (40).
  2. Commutateur électrique sensible à la pression selon la revendication 1, dans lequel l'élément disque (56) agit instantanément.
  3. Commutateur électrique sensible à la pression selon la revendication 1, dans lequel le corps (12) est formé avec un élément paroi (32) s'étendant vers le bas depuis l'évidement (30) et l'élément paroi (32) est serti sur l'ensemble commutateur, l'enfermant à l'intérieur de l'évidement (30).
  4. Commutateur électrique sensible à la pression selon la revendication 1, dans lequel le corps (12) est constitué de matière électriquement conductrice et le circuit de courant s'étend depuis l'éléments siège en forme de disque (40) en traversant le corps (12).
  5. Commutateur électrique sensible à la pression selon la revendication 1, dans lequel un premier joint torique (52) est mis en place entre le corps (12) et le diaphragme (60) et un second joint torique (48) est mis en place entre l'élément de siège en forme de disque (40) et l'oeillet (38) en matière électriquement isolante.
  6. Commutateur électrique sensible à la pression selon la revendication 1, dans lequel le diaphragme (60) présente une partie (62) alignée avec l'élément piston (64) qui est déformée en dehors du plan dans lequel se trouve le reste du diaphragme.
  7. Commutateur électrique sensible à la pression selon la revendication 1, comprenant en outre un logement de retenue (68) disposé sur l'élément piston (64) au voisinage de la première extrémité (70) et qui est logé dans l'évidement (30), le logement de retenue (68) ayant une périphérie extérieure plus grande que celle de l'alésage (24).
EP93309729A 1992-12-08 1993-12-03 Commutateur sensible à haute pression et méthode pour sa fabrication Expired - Lifetime EP0601810B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US07/987,522 US5278367A (en) 1992-12-08 1992-12-08 High pressure responsive switch and method for making same
US987522 1992-12-08

Publications (2)

Publication Number Publication Date
EP0601810A1 EP0601810A1 (fr) 1994-06-15
EP0601810B1 true EP0601810B1 (fr) 1996-11-06

Family

ID=25533340

Family Applications (1)

Application Number Title Priority Date Filing Date
EP93309729A Expired - Lifetime EP0601810B1 (fr) 1992-12-08 1993-12-03 Commutateur sensible à haute pression et méthode pour sa fabrication

Country Status (4)

Country Link
US (2) US5278367A (fr)
EP (1) EP0601810B1 (fr)
JP (1) JP3442442B2 (fr)
DE (1) DE69305830T2 (fr)

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5278367A (en) * 1992-12-08 1994-01-11 Texas Instruments Incorporated High pressure responsive switch and method for making same
US5469978A (en) * 1994-07-12 1995-11-28 Keystone Railway Equipment Company, Inc. Condition indicating system for railway car cushioning unit
US5482439A (en) * 1995-01-09 1996-01-09 Chen; Chi-Wen Power breaker for a compressor for automobiles with a curved plug and wrinkled control disk
US5508483A (en) * 1995-03-24 1996-04-16 Texas Instruments Incorporated High pressure switch apparatus
DE69632446T2 (de) * 1995-11-29 2005-05-12 Toyoda Koki K.K., Kariya Druckschalter
US5889247A (en) * 1997-04-17 1999-03-30 Texas Instruments Incorporated Normally closed, pressure responsive electrical switch
JP2002279873A (ja) * 2001-03-19 2002-09-27 Texas Instr Japan Ltd 圧力スイッチ
DE10159536A1 (de) * 2001-12-05 2003-06-26 Beru Ag Differenzdruckschalter-sensor

Family Cites Families (18)

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Publication number Priority date Publication date Assignee Title
FR819191A (fr) * 1936-06-18 1937-10-12 Jaeger Ets Ed Interrupteur électrique à commande manométrique
GB946771A (en) * 1960-04-12 1964-01-15 Berg Airlectro Products Co Improvements in or relating to airoperated electric switches
GB1097930A (en) * 1965-12-22 1968-01-03 Gen Electric Co Ltd Improvements in or relating to electric switches
DE1611923A1 (de) * 1967-03-15 1969-08-28 Daiei Shikogyo Kabushiki Kaish Klebeband-Satz
DE2010073A1 (de) * 1970-03-04 1971-10-07 Volkswagenwerk Ag Anordnung mit einem Tandem Hauptbrems zylinder und elektrischen Schaltmitteln fur Bremshchtiampen
US3673369A (en) * 1970-11-25 1972-06-27 Stewart Warner Corp Diaphragm pressure switch with integral stop means for diaphragm sealing
US3718790A (en) * 1971-10-04 1973-02-27 Gen Motors Corp Pressure responsive switch
EP0020809A1 (fr) * 1979-07-03 1981-01-07 Mannesmann Kienzle GmbH Commutateur sensible à la pression utilisable dans les indicateurs de pression de pneumatiques
FR2494033A1 (fr) * 1980-11-10 1982-05-14 Torrix Sa Ets Dispositif electrohydraulique de signalisation
US4495389A (en) * 1982-06-11 1985-01-22 Therm-O-Disc, Incorporated Pressure switch
JPS603533U (ja) * 1983-06-18 1985-01-11 三菱電機株式会社 圧力応動装置
US4593166A (en) * 1985-02-06 1986-06-03 Tgk Company, Limited Dual action pressure switch
US4931604A (en) * 1986-11-18 1990-06-05 General Electric Company Control device
JPH07114094B2 (ja) * 1987-07-23 1995-12-06 株式会社不二工機製作所 三動作形圧力スイッチ
US4794214A (en) * 1987-10-28 1988-12-27 Texas Instruments Incorporated Fluid pressure responsive electrical switch
DE3744604A1 (de) * 1987-12-31 1989-07-13 Kirsten Elektrotech Elektrischer schalter
US5149927A (en) * 1991-04-05 1992-09-22 Eaton Corporation Binary action pressure switch
US5278367A (en) * 1992-12-08 1994-01-11 Texas Instruments Incorporated High pressure responsive switch and method for making same

Also Published As

Publication number Publication date
EP0601810A1 (fr) 1994-06-15
JPH06283081A (ja) 1994-10-07
US5373127A (en) 1994-12-13
US5278367A (en) 1994-01-11
DE69305830T2 (de) 1997-03-13
DE69305830D1 (de) 1996-12-12
JP3442442B2 (ja) 2003-09-02

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